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首页> 外文期刊>Medical Physics >Ion recombination correction for very high dose-per-pulse high-energy electron beams.
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Ion recombination correction for very high dose-per-pulse high-energy electron beams.

机译:极高剂量每脉冲高能电子束的离子复合校正。

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The parallel-plate ionization chamber is the recommended tool for the absorbed dose measurement in pulsed high-energy electron beams. Typically, the electron beams used in radiotherapy have a dose-per-pulse value less then 0.1 cGy/pulse. In this range the factor to correct the response of an ionization chamber for the lack of complete charge collection due to ion recombination (ksat) can be properly evaluated with the standard "two voltage" method proposed by the international dosimetric reports. Very high dose-per-pulse electron beams are employed in some special Linac dedicated to the Intra-Operatory-Radiation-Therapy (IORT). The high dose-per-pulse values (3-13 cGy/pulse) characterizing the IORT electron beams allow to deliver the therapeutic dose (10-20 Gy) in less than a minute. This considerably reduces the IORT procedure time, but some dosimetric problems arise because the standard method to evaluate ksat overestimates its value by 20%. Moreover, if the dose-per-pulse value >1 cGy/pulse, the dependence of ksat on the dose-per-pulse value cannot be neglected for relative dosimetry. In this work the dependence of ksat on the dose-per-pulse value is derived, based on the general equation that describes the ion recombination in the Boag theory. A new equation for ksat, depending on known or measurable quantities, is presented. The new ksat equation is experimentally tested by comparing the absorbed doses to water measured with parallel-plate ionization chambers (Roos and Markus) to that measured using dose-per-pulse independent dosimeters, such as radiochromic films and chemical Fricke dosimeters. These measurements are performed in the high dose-per-pulse (3-13 cGy/pulse) electron beams of the IORT dedicated Linac Hitesys Novac7 (Aprilia-Latina, Italy). The dose measurements made using the parallel-plate chambers and those made using the dose-per-pulse independent dosimeters are in good agreement (<3%). This demonstrates the possibility of using the parallel-plate ionization chambers also for the very high dose-per-pulse (> 1 cGy/pulse) electron-beam dosimetry.
机译:推荐使用平行板电离室测量脉冲高能电子束中的吸收剂量。通常,放射治疗中使用的电子束的每脉冲剂量值小于0.1 cGy /脉冲。在此范围内,可以使用国际剂量学报告提出的标准“双电压”方法正确评估因离子重组(ksat)而导致缺乏完整电荷收集的电离室响应的校正因素。在一些专门用于术中放射治疗(IORT)的特殊直线加速器中,采用了非常高的每脉冲剂量电子束。 IORT电子束的高每脉冲剂量值(3-13 cGy /脉冲)可在不到一分钟的时间内提供治疗剂量(10-20 Gy)。这大大减少了IORT的过程时间,但是由于评估ksat的标准方法将其值高估了20%,因此出现了一些剂量学问题。此外,如果每脉冲剂量值> 1 cGy /脉冲,则相对剂量不能忽略ksat对每脉冲剂量值的依赖性。在这项工作中,根据描述Boag理论中离子重组的一般方程,得出ksat对每脉冲剂量值的依赖性。根据已知或可测量的量,提出了一个新的ksat方程。通过将平行板电离室(Roos和Markus)测量的水吸收剂量与使用每脉冲剂量独立剂量计(例如,放射变色膜和Fricke化学剂量计)测量的吸收剂量进行比较,实验测试了新的ksat方程。这些测量是在IORT专用Linac Hitesys Novac7(意大利Aprilia-Latina)的高剂量每脉冲(3-13 cGy /脉冲)电子束中进行的。使用平行板腔室进行的剂量测量与使用每脉冲剂量独立剂量计进行的剂量测量具有很好的一致性(<3%)。这证明了将平行板电离室也用于非常高的每脉冲剂量(> 1 cGy /脉冲)电子束剂量的可能性。

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